Method for resource allocation
US-2024430866-A1 · Dec 26, 2024 · US
US9356760B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9356760-B2 |
| Application number | US-201313994466-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 8, 2013 |
| Priority date | May 10, 2012 |
| Publication date | May 31, 2016 |
| Grant date | May 31, 2016 |
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In one aspect, the teachings herein provide a system and method for reusing the PUCCH format 3 to address the new HARQ-ACK feedback cases encountered in Rel-11, where different UL/DL configurations are involved in the CA configuration of a UE, such as Rel-11 interband TDD CA with different UL/DL configurations on different bands. The various embodiments illustrated by way of example in this disclosure enable reliable and efficient HARQ-ACK feedback for Rel-11 TDD CA without a substantial increase in specification and implementation complexity.
Opening claim text (preview).
What is claimed is: 1. A method at a User Equipment (UE) of generating Hybrid Automatic Repeat reQuest (HARQ) feedback for transmission in a wireless communication network, said method comprising: receiving a Downlink Assignment Index (DAI) in an Uplink (UL) grant for the UE, where the UE is operating according to a Carrier Aggregation (CA) configuration that aggregates a number of Time Division Duplex (TDD) cells of the wireless communication network as serving cells for the UE; determining the number of HARQ feedback bits to generate for each serving cell based on a minimum one between the value of the DAI and the size of an association set for the serving cell, where the association set of each serving cell is defined by the Uplink/Downlink (UL/DL) configurations of the serving cells and indicates which DL subframes are associated with the HARQ feedback for the serving cell; and generating the HARQ feedback based on generating the determined number of HARQ feedback bits for each of the serving cells; wherein said steps of determining and generating are performed conditionally in dependence on subframe configuration values, so that HARQ feedback bits are not generated for any DL subframes having one or more defined special subframe configurations. 2. The method of claim 1 , wherein determining the number of HARQ feedback bits to generate for each serving cell comprises, for each serving cell, setting the number equal to the minimum one between the value of the DAI and the size of the association set defined for the serving cell. 3. The method of claim 1 , wherein determining the number of HARQ feedback bits to generate for each serving cell comprises, for each serving cell, setting the number equal to a multiple of the minimum one between the value of the DAI and the size of the association set defined for the serving cell, and setting the multiple as a function of a transport block transmission mode of the UE for the serving cell. 4. The method of claim 3 , wherein setting the multiple as the function of the transport block transmission mode of the UE comprises setting the multiple to one if the UE is configured with a single transport block transmission mode for the serving cell, and setting the multiple to two if the UE is configured with a two transport block transmission mode for the serving cell. 5. The method of claim 1 , further comprising transmitting the HARQ feedback on a Physical Uplink Shared Channel (PUSCH) corresponding to the UL grant. 6. A User Equipment (UE) configured to generate Hybrid Automatic Repeat reQuest (HARQ) feedback for transmission in a wireless communication network, said UE comprising: a communications interface comprising a transceiver for communicating with the wireless communication network via an air interface; and a controller circuit operatively associated with the communications interface and configured to: receive a Downlink Assignment Index (DAI) in an Uplink (UL) grant for the UE, where the UE is operating according to a Carrier Aggregation (CA) configuration that aggregates a number of Time Division Duplex (TDD) cells of the wireless communication network as serving cells for the UE; determine the number of HARQ feedback bits to generate for each serving cell based on a minimum one between the value of the DAI and the size of an association set for the serving cell, where the association set of each serving cell is defined by the Uplink/Downlink (UL/DL) configurations of the serving cells and indicates which DL subframes are associated with the HARQ feedback for the serving cell; and generate the HARQ feedback based on generating the determined number of HARQ feedback bits for each of the serving cells; wherein the controller circuit is further configured to perform said generate and determine operations conditionally in dependence on subframe configuration values, so that HARQ feedback bits are not generated for any DL subframes having one or more defined special subframe configurations. 7. The UE of claim 6 , wherein the controller circuit is configured to determine the number of HARQ feedback bits to generate for each serving cell by, for each serving cell, setting the number equal to the minimum one between the value of the DAI and the size of the association set defined for the serving cell. 8. The UE of claim 7 , wherein the controller circuit is configured to determine the number of HARQ feedback bits to generate for each serving cell by, for each serving cell, setting the number equal to a multiple of the minimum one between the value of the DAI and the size of the association set defined for the serving cell, and setting the multiple as a function of a transport block transmission mode of the UE for the serving cell. 9. The UE of claim 8 , wherein the controller circuit is configured to set the multiple as the function of the transport block transmission mode of the UE comprises setting the multiple to one if the UE is configured with a single transport block transmission mode for the serving cell, and setting the multiple to two if the UE is configured with a two transport block transmission mode for the serving cell. 10. The UE of claim 6 , wherein the controller circuit is configured to transmit the HARQ feedback on a Physical Uplink Shared Channel (PUSCH) corresponding to the UL grant. 11. A non-transitory computer readable medium storing a computer program comprising instructions, which, when executed by a controller circuit in a User Equipment (UE), configure the UE to generate Hybrid Automatic Repeat reQuest (HARQ) feedback for transmission in a wireless communication network, based on configuring the UE to: receive a Downlink Assignment Index (DAI) in an Uplink (UL) grant for the UE, where the UE is operating according to a Carrier Aggregation (CA) configuration that aggregates a number of Time Division Duplex (TDD) cells of the wireless communication network as serving cells for the UE; determine the number of HARQ feedback bits to generate for each serving cell based on a minimum one between the value of the DAI and the size of an association set for the serving cell, where the association set of each serving cell is defined by the Uplink/Downlink (UL/DL) configurations of the serving cells and indicates which DL subframes are associated with the HARQ feedback for the serving cell; and generate the HARQ feedback based on generating the determined number of HARQ feedback bits for each of the serving cells; wherein the computer program instructions further comprise instructions configuring the UE to perform said generate and determine operations conditionally in dependence on subframe configuration values, so that HARQ feedback bits are not generated for any DL subframes having one or more defined special subframe configurations.
Two-way operation using the same type of signal, i.e. duplex · CPC title
Hybrid protocols; Hybrid automatic repeat request [HARQ] · CPC title
Physical mapping arrangements (for ACK signaling see also H04L5/0053) · CPC title
Details of the supervisory signal · CPC title
Physical resource allocation for ACK/NACK (for physical mapping arrangements in ARQ protocols H04L1/1861) · CPC title
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